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Wikipedia:Map data/Alpine Fault

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This is an old revision of this page, as edited by ChaseKiwi (talk | contribs) at 01:21, 8 May 2023 (add simple logic to only show Alpine Fault on Alpine Faulr page). The present address (URL) is a permanent link to this revision, which may differ significantly from the current revision.
File information
Description

New Zealand Alpine Fault and associated active faults

Source

See Alpine Fault. The majority of the information is from GNS fault database. The following references also contributed information: Hill, E. June (1995). "The Anita Shear Zone: a major, middle Cretaceous tectonic boundary innorthwestern Fiordland". New Zealand Journal of Geology and Geophysics. doi:10.1080/00288306.1995.9514641.,Norris, Richard J.; Cooper, Alan F. (2001). "Late Quaternary slip rates and slip partitioning on the Alpine Fault, New Zealand". Journal of Structural Geology. 23 (2–3): 507–520. doi:10.1016/S0191-8141(00)00122-X. ISSN 0191-8141., Barth, N.C.; Kulhanek, D.K.; Beu, A.G.; Murray-Wallace, C.V.; Hayward, B.W.; Mildenhall, D.C.; Lee, D.E. (2014). "New c. 270 kyr strike-slip and uplift rates for the southern Alpine Fault and implications for the New Zealand plate boundary". Journal of Structural Geology. 64: 39–52. doi:10.1016/j.jsg.2013.08.009. ISSN 0191-8141.

Date

2023-05-07

Author

User:ChaseKiwi

Permission
(Reusing this file)

See below.

Additional information Map of active faults (red #ff0000). It is likely other faults in in Fiordland and Westcoast will be added with controlling logic

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Uplift rate = 2.6 mm/year
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Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
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Uplift rate = 2.6 mm/year
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Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
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Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
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Uplift rate = 2.6 mm/year
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
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Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
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Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
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Uplift rate = 2.6 mm/year
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Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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Type=DextralNZ AFD
Uplift rate = 2.6 mm/year
Max. dextral slip rate = 29.6 mm/year.Barth2014
Dip-slip rates = 10 mm/year in central section and decreasing to zero at the southern endNorris2001
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